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Electrochemically synthesized GIC-based adsorbents for water treatment through adsorption and electrochemical regeneration

机译:电化学合成的基于GIC的吸附剂,用于通过吸附和电化学再生进行水处理

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The flake GIC material delivered a small adsorptive capacity for a number of organic pollutants, however, underwent quick adsorption and electrochemical regeneration in minutes. In this study, binary and ternary GIC-based adsorbents were prepared using electrochemical intercalation of Chinese large flake graphite (CLFG) and Madagascan medium flake graphite (MMFG) materials. In this context GIC bisulphate, GIC-nitrate, GIC-bisulphate-acetate, GIC nitrate-bisulphate, and GIC-nitrate-acetate were developed and characterized in order to evaluate their adsorptive and electrical properties. The adsorption behaviour was studied using an organic dye, acid violet 17, as a model dissolved organic pollutant. The treatment time and acid concentration for electrochemical intercalation were optimized in order to maximize the adsorptive capacity of the GIC based adsorbents. GIC-bisulphate delivered double adsorptive capacity after electrochemical intercalation, whereas, GIC nitrate diminished the adsorptive capacity to one half that of GIC bisulphate. However, no significant effect of ternary intercalated compounds was observed in terms of improved adsorption capacity or electrical conductivity.
机译:片状GIC材料对多种有机污染物的吸附能力较小,但是在数分钟内就进行了快速吸附和电化学再生。在这项研究中,使用中国大片状石墨(CLFG)和Madagascan中片状石墨(MMFG)材料的电化学插层制备了基于二元和三元GIC的吸附剂。在此背景下,开发并表征了GIC硫酸氢盐,GIC硝酸盐,GIC硫酸氢盐,GIC硝酸盐硫酸氢盐和GIC硝酸盐乙酸盐,并对其进行了表征,以评估其吸附性能和电性能。使用有机染料酸性紫17作为溶解有机污染物的模型研究了吸附行为。优化了电化学插入的处理时间和酸浓度,以使基于GIC的吸附剂的吸附能力最大化。电化学插入后,GIC-硫酸氢盐具有两倍的吸附能力,而GIC硝酸盐将其吸附能力降低到GIC硫酸盐的一半。然而,就改善的吸附容量或电导率而言,未观察到三元插层化合物的显着效果。

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